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Antiprism

In geometry, an n-gonal antiprism or n-antiprism is a polyhedron composed of two parallel direct copies (not mirror images) of an n-sided polygon, connected by an alternating band of 2n triangles. They are represented by the Conway notation An.

Set of uniform n-gonal antiprisms
Uniform hexagonal antiprism (n = 6)
Typeuniform in the sense of semiregular polyhedron
Faces2 regular n-gons
2n equilateral triangles
Edges4n
Vertices2n
Vertex configuration3.3.3.n
Schläfli symbol{ }⊗{n} [1]
s{2,2n}
sr{2,n}
Conway notationAn
Coxeter diagram
Symmetry groupDnd, [2+,2n], (2*n), order 4n
Rotation groupDn, [2,n]+, (22n), order 2n
Dual polyhedronconvex dual-uniform n-gonal trapezohedron
Propertiesconvex, vertex-transitive, regular polygon faces, congruent & coaxial bases
Net
Net of uniform enneagonal antiprism (n = 9)

Antiprisms are a subclass of prismatoids, and are a (degenerate) type of snub polyhedron.

Antiprisms are similar to prisms, except that the bases are twisted relatively to each other, and that the side faces (connecting the bases) are 2n triangles, rather than n quadrilaterals.

The dual polyhedron of an n-gonal antiprism is an n-gonal trapezohedron.

History edit

In his 1619 book Harmonices Mundi, Johannes Kepler observed the existence of the infinite family of antiprisms.[2] This has conventionally been thought of as the first discovery of these shapes, but they may have been known earlier: an unsigned printing block for the net of a hexagonal antiprism has been attributed to Hieronymus Andreae, who died in 1556.[3]

The German form of the word "antiprism" was used for these shapes in the 19th century; Karl Heinze credits its introduction to Theodor Wittstein [de].[4] Although the English "anti-prism" had been used earlier for an optical prism used to cancel the effects of a primary optimal element,[5] the first use of "antiprism" in English in its geometric sense appears to be in the early 20th century in the works of H. S. M. Coxeter.[6]

Special cases edit

Right antiprism edit

For an antiprism with regular n-gon bases, one usually considers the case where these two copies are twisted by an angle of 180/n degrees.

The axis of a regular polygon is the line perpendicular to the polygon plane and lying in the polygon centre.

For an antiprism with congruent regular n-gon bases, twisted by an angle of 180/n degrees, more regularity is obtained if the bases have the same axis: are coaxial; i.e. (for non-coplanar bases): if the line connecting the base centers is perpendicular to the base planes. Then the antiprism is called a right antiprism, and its 2n side faces are isosceles triangles.

Uniform antiprism edit

A uniform n-antiprism has two congruent regular n-gons as base faces, and 2n equilateral triangles as side faces.

Uniform antiprisms form an infinite class of vertex-transitive polyhedra, as do uniform prisms. For n = 2, we have the digonal antiprism (degenerate antiprism), which is visually identical to the regular tetrahedron; for n = 3, the regular octahedron as a triangular antiprism (non-degenerate antiprism).

Family of uniform n-gonal antiprisms
Antiprism name Digonal antiprism (Trigonal)
Triangular antiprism
(Tetragonal)
Square antiprism
Pentagonal antiprism Hexagonal antiprism Heptagonal antiprism ... Apeirogonal antiprism
Polyhedron image             ...
Spherical tiling image             Plane tiling image  
Vertex config. 2.3.3.3 3.3.3.3 4.3.3.3 5.3.3.3 6.3.3.3 7.3.3.3 ... ∞.3.3.3

The Schlegel diagrams of these semiregular antiprisms are as follows:

 
A3
 
A4
 
A5
 
A6
 
A7
 
A8

Cartesian coordinates edit

Cartesian coordinates for the vertices of a right n-antiprism (i.e. with regular n-gon bases and 2n isosceles triangle side faces) are:

 

where 0 ≤ k ≤ 2n – 1;

if the n-antiprism is uniform (i.e. if the triangles are equilateral), then:

 

Volume and surface area edit

Let a be the edge-length of a uniform n-gonal antiprism; then the volume is:

 

and the surface area is:

 

Furthermore, the volume of a regular right n-gonal antiprism with side length of its bases l and height h is given by:

 

Note that the volume of a right n-gonal prism with the same l and h is:

 
which is smaller than that of an antiprism.

Symmetry edit

The symmetry group of a right n-antiprism (i.e. with regular bases and isosceles side faces) is Dnd = Dnv of order 4n, except in the cases of:

  • n = 2: the regular tetrahedron, which has the larger symmetry group Td of order 24 = 3 × (4 × 2), which has three versions of D2d as subgroups;
  • n = 3: the regular octahedron, which has the larger symmetry group Oh of order 48 = 4 × (4 × 3), which has four versions of D3d as subgroups.

The symmetry group contains inversion if and only if n is odd.

The rotation group is Dn of order 2n, except in the cases of:

  • n = 2: the regular tetrahedron, which has the larger rotation group T of order 12 = 3 × (2 × 2), which has three versions of D2 as subgroups;
  • n = 3: the regular octahedron, which has the larger rotation group O of order 24 = 4 × (2 × 3), which has four versions of D3 as subgroups.

Note: The right n-antiprisms have congruent regular n-gon bases and congruent isosceles triangle side faces, thus have the same (dihedral) symmetry group as the uniform n-antiprism, for n ≥ 4.

Generalizations edit

In higher dimensions edit

Four-dimensional antiprisms can be defined as having two dual polyhedra as parallel opposite faces, so that each three-dimensional face between them comes from two dual parts of the polyhedra: a vertex and a dual polygon, or two dual edges. Every three-dimensional convex polyhedron is combinatorially equivalent to one of the two opposite faces of a four-dimensional antiprism, constructed from its canonical polyhedron and its polar dual.[7] However, there exist four-dimensional polyhedra that cannot be combined with their duals to form five-dimensional antiprisms.[8]

Self-crossing polyhedra edit

 
5/2-antiprism
 
5/3-antiprism
 
9/2-antiprism
 
9/4-antiprism
 
9/5-antiprism
 
This shows all the non-star and star antiprisms up to 15 sides, together with those of a 29-agon.

Uniform star antiprisms are named by their star polygon bases, {p/q}, and exist in prograde and in retrograde (crossed) solutions. Crossed forms have intersecting vertex figures, and are denoted by "inverted" fractions: p/(pq) instead of p/q; example: 5/3 instead of 5/2.

A right star antiprism has two congruent coaxial regular convex or star polygon base faces, and 2n isosceles triangle side faces.

Any star antiprism with regular convex or star polygon bases can be made a right star antiprism (by translating and/or twisting one of its bases, if necessary).

In the retrograde forms, but not in the prograde forms, the triangles joining the convex or star bases intersect the axis of rotational symmetry. Thus:

  • Retrograde star antiprisms with regular convex polygon bases cannot have all equal edge lengths, and so cannot be uniform. "Exception": a retrograde star antiprism with equilateral triangle bases (vertex configuration: 3.3/2.3.3) can be uniform; but then, it has the appearance of an equilateral triangle: it is a degenerate star polyhedron.
  • Similarly, some retrograde star antiprisms with regular star polygon bases cannot have all equal edge lengths, and so cannot be uniform. Example: a retrograde star antiprism with regular star 7/5-gon bases (vertex configuration: 3.3.3.7/5) cannot be uniform.

Also, star antiprism compounds with regular star p/q-gon bases can be constructed if p and q have common factors. Example: a star 10/4-antiprism is the compound of two star 5/2-antiprisms.

See also edit

References edit

  1. ^ N.W. Johnson: Geometries and Transformations, (2018) ISBN 978-1-107-10340-5 Chapter 11: Finite symmetry groups, 11.3 Pyramids, Prisms, and Antiprisms, Figure 11.3c
  2. ^ Kepler, Johannes (1619). "Book II, Definition X". Harmonices Mundi (in Latin). p. 49. See also illustration A, of a heptagonal antiprism.
  3. ^ Schreiber, Peter; Fischer, Gisela; Sternath, Maria Luise (July 2008). "New light on the rediscovery of the Archimedean solids during the Renaissance". Archive for History of Exact Sciences. 62 (4): 457–467. JSTOR 41134285.
  4. ^ Heinze, Karl (1886). Lucke, Franz (ed.). Genetische Stereometrie (in German). B. G. Teubner. p. 14.
  5. ^ Smyth, Piazzi (1881). "XVII. On the Constitution of the Lines forming the Low-Temperature Spectrum of Oxygen". Transactions of the Royal Society of Edinburgh. 30 (1): 419–425. doi:10.1017/s0080456800029112.
  6. ^ Coxeter, H. S. M. (January 1928). "The pure Archimedean polytopes in six and seven dimensions". Mathematical Proceedings of the Cambridge Philosophical Society. 24 (1): 1–9. doi:10.1017/s0305004100011786.
  7. ^ Grünbaum, Branko (2005). "Are prisms and antiprisms really boring? (Part 3)" (PDF). Geombinatorics. 15 (2): 69–78. MR 2298896.
  8. ^ Dobbins, Michael Gene (2017). "Antiprismlessness, or: reducing combinatorial equivalence to projective equivalence in realizability problems for polytopes". Discrete & Computational Geometry. 57 (4): 966–984. doi:10.1007/s00454-017-9874-y. MR 3639611.

Further reading edit

  • Anthony Pugh (1976). Polyhedra: A visual approach. California: University of California Press Berkeley. ISBN 0-520-03056-7. Chapter 2: Archimedean polyhedra, prisms and antiprisms

External links edit

antiprism, this, article, includes, list, general, references, lacks, sufficient, corresponding, inline, citations, please, help, improve, this, article, introducing, more, precise, citations, january, 2013, learn, when, remove, this, template, message, geomet. This article includes a list of general references but it lacks sufficient corresponding inline citations Please help to improve this article by introducing more precise citations January 2013 Learn how and when to remove this template message In geometry an n gonal antiprism or n antiprism is a polyhedron composed of two parallel direct copies not mirror images of an n sided polygon connected by an alternating band of 2n triangles They are represented by the Conway notation An Set of uniform n gonal antiprismsUniform hexagonal antiprism n 6 Typeuniform in the sense of semiregular polyhedronFaces2 regular n gons2n equilateral trianglesEdges4nVertices2nVertex configuration3 3 3 nSchlafli symbol n 1 s 2 2n sr 2 n Conway notationAnCoxeter diagramSymmetry groupDnd 2 2n 2 n order 4nRotation groupDn 2 n 22n order 2nDual polyhedronconvex dual uniform n gonal trapezohedronPropertiesconvex vertex transitive regular polygon faces congruent amp coaxial basesNetNet of uniform enneagonal antiprism n 9 Antiprisms are a subclass of prismatoids and are a degenerate type of snub polyhedron Antiprisms are similar to prisms except that the bases are twisted relatively to each other and that the side faces connecting the bases are 2n triangles rather than n quadrilaterals The dual polyhedron of an n gonal antiprism is an n gonal trapezohedron Contents 1 History 2 Special cases 2 1 Right antiprism 2 2 Uniform antiprism 2 3 Cartesian coordinates 2 4 Volume and surface area 2 5 Symmetry 3 Generalizations 3 1 In higher dimensions 3 2 Self crossing polyhedra 4 See also 5 References 6 Further reading 7 External linksHistory editIn his 1619 book Harmonices Mundi Johannes Kepler observed the existence of the infinite family of antiprisms 2 This has conventionally been thought of as the first discovery of these shapes but they may have been known earlier an unsigned printing block for the net of a hexagonal antiprism has been attributed to Hieronymus Andreae who died in 1556 3 The German form of the word antiprism was used for these shapes in the 19th century Karl Heinze credits its introduction to Theodor Wittstein de 4 Although the English anti prism had been used earlier for an optical prism used to cancel the effects of a primary optimal element 5 the first use of antiprism in English in its geometric sense appears to be in the early 20th century in the works of H S M Coxeter 6 Special cases editRight antiprism edit For an antiprism with regular n gon bases one usually considers the case where these two copies are twisted by an angle of 180 n degrees The axis of a regular polygon is the line perpendicular to the polygon plane and lying in the polygon centre For an antiprism with congruent regular n gon bases twisted by an angle of 180 n degrees more regularity is obtained if the bases have the same axis are coaxial i e for non coplanar bases if the line connecting the base centers is perpendicular to the base planes Then the antiprism is called a right antiprism and its 2n side faces are isosceles triangles Uniform antiprism edit A uniform n antiprism has two congruent regular n gons as base faces and 2n equilateral triangles as side faces Uniform antiprisms form an infinite class of vertex transitive polyhedra as do uniform prisms For n 2 we have the digonal antiprism degenerate antiprism which is visually identical to the regular tetrahedron for n 3 the regular octahedron as a triangular antiprism non degenerate antiprism Family of uniform n gonal antiprisms vte Antiprism name Digonal antiprism Trigonal Triangular antiprism Tetragonal Square antiprism Pentagonal antiprism Hexagonal antiprism Heptagonal antiprism Apeirogonal antiprism Polyhedron image nbsp nbsp nbsp nbsp nbsp nbsp Spherical tiling image nbsp nbsp nbsp nbsp nbsp nbsp Plane tiling image nbsp Vertex config 2 3 3 3 3 3 3 3 4 3 3 3 5 3 3 3 6 3 3 3 7 3 3 3 3 3 3 The Schlegel diagrams of these semiregular antiprisms are as follows nbsp A3 nbsp A4 nbsp A5 nbsp A6 nbsp A7 nbsp A8 Cartesian coordinates edit Cartesian coordinates for the vertices of a right n antiprism i e with regular n gon bases and 2n isosceles triangle side faces are cos k p n sin k p n 1 k h displaystyle left cos frac k pi n sin frac k pi n 1 k h right nbsp where 0 k 2n 1 if the n antiprism is uniform i e if the triangles are equilateral then 2 h 2 cos p n cos 2 p n displaystyle 2h 2 cos frac pi n cos frac 2 pi n nbsp Volume and surface area edit Let a be the edge length of a uniform n gonal antiprism then the volume is V n 4 cos 2 p 2 n 1 sin 3 p 2 n 12 sin 2 p n a 3 displaystyle V frac n sqrt 4 cos 2 frac pi 2n 1 sin frac 3 pi 2n 12 sin 2 frac pi n a 3 nbsp and the surface area is A n 2 cot p n 3 a 2 displaystyle A frac n 2 left cot frac pi n sqrt 3 right a 2 nbsp Furthermore the volume of a regular right n gonal antiprism with side length of its bases l and height h is given by V n h l 2 12 csc p n 2 cot p n displaystyle V frac nhl 2 12 left csc frac pi n 2 cot frac pi n right nbsp Note that the volume of a right n gonal prism with the same l and h is V p r i s m n h l 2 4 cot p n displaystyle V mathrm prism frac nhl 2 4 cot frac pi n nbsp which is smaller than that of an antiprism Symmetry edit The symmetry group of a right n antiprism i e with regular bases and isosceles side faces is Dnd Dnv of order 4n except in the cases of n 2 the regular tetrahedron which has the larger symmetry group Td of order 24 3 4 2 which has three versions of D2d as subgroups n 3 the regular octahedron which has the larger symmetry group Oh of order 48 4 4 3 which has four versions of D3d as subgroups The symmetry group contains inversion if and only if n is odd The rotation group is Dn of order 2n except in the cases of n 2 the regular tetrahedron which has the larger rotation group T of order 12 3 2 2 which has three versions of D2 as subgroups n 3 the regular octahedron which has the larger rotation group O of order 24 4 2 3 which has four versions of D3 as subgroups Note The right n antiprisms have congruent regular n gon bases and congruent isosceles triangle side faces thus have the same dihedral symmetry group as the uniform n antiprism for n 4 Generalizations editIn higher dimensions edit Four dimensional antiprisms can be defined as having two dual polyhedra as parallel opposite faces so that each three dimensional face between them comes from two dual parts of the polyhedra a vertex and a dual polygon or two dual edges Every three dimensional convex polyhedron is combinatorially equivalent to one of the two opposite faces of a four dimensional antiprism constructed from its canonical polyhedron and its polar dual 7 However there exist four dimensional polyhedra that cannot be combined with their duals to form five dimensional antiprisms 8 Self crossing polyhedra edit nbsp 5 2 antiprism nbsp 5 3 antiprism nbsp 9 2 antiprism nbsp 9 4 antiprism nbsp 9 5 antiprism nbsp This shows all the non star and star antiprisms up to 15 sides together with those of a 29 agon Further information Prismatic uniform polyhedron Uniform star antiprisms are named by their star polygon bases p q and exist in prograde and in retrograde crossed solutions Crossed forms have intersecting vertex figures and are denoted by inverted fractions p p q instead of p q example 5 3 instead of 5 2 A right star antiprism has two congruent coaxial regular convex or star polygon base faces and 2n isosceles triangle side faces Any star antiprism with regular convex or star polygon bases can be made a right star antiprism by translating and or twisting one of its bases if necessary In the retrograde forms but not in the prograde forms the triangles joining the convex or star bases intersect the axis of rotational symmetry Thus Retrograde star antiprisms with regular convex polygon bases cannot have all equal edge lengths and so cannot be uniform Exception a retrograde star antiprism with equilateral triangle bases vertex configuration 3 3 2 3 3 can be uniform but then it has the appearance of an equilateral triangle it is a degenerate star polyhedron Similarly some retrograde star antiprisms with regular star polygon bases cannot have all equal edge lengths and so cannot be uniform Example a retrograde star antiprism with regular star 7 5 gon bases vertex configuration 3 3 3 7 5 cannot be uniform Also star antiprism compounds with regular star p q gon bases can be constructed if p and q have common factors Example a star 10 4 antiprism is the compound of two star 5 2 antiprisms Star p q antiprisms by symmetry for p 12 Symmetry group Uniform stars Right stars D4d 2 8 2 4 nbsp 3 3 2 3 4Crossed square antiprism D5h 2 5 225 nbsp 3 3 3 5 2Pentagrammic antiprism nbsp 3 3 2 3 5crossed pentagonal antiprism D5d 2 10 2 5 nbsp 3 3 3 5 3Pentagrammic crossed antiprism D6d 2 12 2 6 nbsp 3 3 2 3 6crossed hexagonal antiprism D7h 2 7 227 nbsp 3 3 3 7 2 nbsp 3 3 3 7 4 D7d 2 14 2 7 nbsp 3 3 3 7 3 D8d 2 16 2 8 nbsp 3 3 3 8 3Octagrammic antiprism nbsp 3 3 3 8 5Octagrammic crossed antiprism D9h 2 9 229 nbsp 3 3 3 9 2Enneagrammic antiprism 9 2 nbsp 3 3 3 9 4Enneagrammic antiprism 9 4 D9d 2 18 2 9 nbsp 3 3 3 9 5Enneagrammic crossed antiprism D10d 2 20 2 10 nbsp 3 3 3 10 3Decagrammic antiprism D11h 2 11 2 2 11 nbsp 3 3 3 11 2 nbsp 3 3 3 11 4 nbsp 3 3 3 11 6 D11d 2 22 2 11 nbsp 3 3 3 11 3 nbsp 3 3 3 11 5 nbsp 3 3 3 11 7 D12d 2 24 2 12 nbsp 3 3 3 12 5 nbsp 3 3 3 12 7 See also editGrand antiprism a four dimensional polytope Skew polygon a three dimensional polygon whose convex hull is an antiprismReferences edit N W Johnson Geometries and Transformations 2018 ISBN 978 1 107 10340 5 Chapter 11 Finite symmetry groups 11 3 Pyramids Prisms and Antiprisms Figure 11 3c Kepler Johannes 1619 Book II Definition X Harmonices Mundi in Latin p 49 See also illustration A of a heptagonal antiprism Schreiber Peter Fischer Gisela Sternath Maria Luise July 2008 New light on the rediscovery of the Archimedean solids during the Renaissance Archive for History of Exact Sciences 62 4 457 467 JSTOR 41134285 Heinze Karl 1886 Lucke Franz ed Genetische Stereometrie in German B G Teubner p 14 Smyth Piazzi 1881 XVII On the Constitution of the Lines forming the Low Temperature Spectrum of Oxygen Transactions of the Royal Society of Edinburgh 30 1 419 425 doi 10 1017 s0080456800029112 Coxeter H S M January 1928 The pure Archimedean polytopes in six and seven dimensions Mathematical Proceedings of the Cambridge Philosophical Society 24 1 1 9 doi 10 1017 s0305004100011786 Grunbaum Branko 2005 Are prisms and antiprisms really boring Part 3 PDF Geombinatorics 15 2 69 78 MR 2298896 Dobbins Michael Gene 2017 Antiprismlessness or reducing combinatorial equivalence to projective equivalence in realizability problems for polytopes Discrete amp Computational Geometry 57 4 966 984 doi 10 1007 s00454 017 9874 y MR 3639611 Further reading editAnthony Pugh 1976 Polyhedra A visual approach California University of California Press Berkeley ISBN 0 520 03056 7 Chapter 2 Archimedean polyhedra prisms and antiprismsExternal links edit nbsp Media related to Antiprisms at Wikimedia Commons Weisstein Eric W Antiprism MathWorld Nonconvex Prisms and Antiprisms Paper models of prisms and antiprisms Retrieved from https en wikipedia org w index php title Antiprism amp oldid 1206619585, wikipedia, wiki, book, books, library,

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